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    • 4. 发明授权
    • Relay device and relay method
    • 继电器和继电器方式
    • US08774001B2
    • 2014-07-08
    • US13357927
    • 2012-01-25
    • Takeshi KumagaiNobuhito MatsuyamaTakeshi AimotoToshio DoiKazuo Sugai
    • Takeshi KumagaiNobuhito MatsuyamaTakeshi AimotoToshio DoiKazuo Sugai
    • H04L12/26
    • H04L47/6275H04L47/2441H04L47/60H04L49/9036
    • A relay device of relaying a communication packet is disclosed, which comprises: an input module configured to receive the communication packet as an input; a buffer configured to have a plurality of queues and temporarily accumulated the received communication packet; a sorter configured to sort the received communication packet to one of the plurality of queues, depending on a specific value obtained by a predetermined function that gives an aggregate output from an input which is transfer information regarding transfer of the communication packet; and a band controller configured to control a bandwidth for each of the plurality of queues and output communication packets accumulated in the plurality of queues for transmission of the communication packets. This ensures the quality of service, while saving the capacity of the buffer used for the queues.
    • 公开了一种中继通信分组的中继装置,包括:输入模块,用于接收通信分组作为输入; 配置为具有多个队列并临时累积所接收的通信分组的缓冲器; 分拣机,被配置为根据通过给出来自关于通信分组的传送的传输的信息的输入的聚合输出的预定功能获得的特定值,将接收到的通信分组排序到多个队列中的一个队列; 以及频带控制器,被配置为控制所述多个队列中的每一个的带宽,并且输出在所述多个队列中累积的通信分组,以发送所述通信分组。 这确保了服务质量,同时节省了用于队列的缓冲区的容量。
    • 6. 发明授权
    • Packet relaying apparatus and high speed multicast system
    • 分组中继设备和高速组播系统
    • US06778532B1
    • 2004-08-17
    • US09389301
    • 1999-09-02
    • Shinichi AkahaneKazuo SugaiTakeshi AimotoNobuhito MatsuyamaYoshihito SakoHiroshi Sekino
    • Shinichi AkahaneKazuo SugaiTakeshi AimotoNobuhito MatsuyamaYoshihito SakoHiroshi Sekino
    • H04J110
    • H04L45/742H04L12/18H04L12/46H04L45/00H04L45/16
    • In a high speed multicast route searching method of searching information of a transmission port to which a received multicast packet is next transferred: a route address is formed by coupling a receiver address and a sender address in this order; one p-th power-of-2-branch tree node is configured by a collection of one two-branch tree node and two-branch tree nodes of p−1 stages totalling ((p-th power of 2)−1) nodes just under the one two-branch tree node to form a p-th power-of-2-branch tree which is stored in a memory; not one bit but consecutive p bits of the route address coupling the receiver address and sender address in a received multicast packet in this order are checked at the same time; and in accordance with the values of the consecutive bits, a search tree stored in the memory is searched. In this manner, a search process can be completed by tracing nodes (the number of bits of a search key divided by p) times at a maximum, independently from the number of entries.
    • 在高速多播路由搜索方法中,搜索接收到的多播分组的下一个传输的传输端口的信息:通过按照该顺序耦合接收机地址和发送方地址来形成路由地址; 一个p个2分支树状节点由一个两分支树节点和总共((p-th功率为2)-1)个节点的p-1级的两分支树节点的集合来配置 恰好在一个双分支树节点之下,以形成存储在存储器中的第p个2分支树枝; 不是一个位,而是同时检查在接收到的组播数据包中按顺序耦合接收器地址和发送方地址的路由地址的连续p位; 并且根据连续比特的值,搜索存储在存储器中的搜索树。 以这种方式,可以独立于条目的数量,通过跟踪节点(搜索关键字的比特数除以p)乘以最大值来完成搜索处理。
    • 9. 发明授权
    • Bandwidth monitoring device
    • 带宽监控设备
    • US07397765B2
    • 2008-07-08
    • US10769082
    • 2004-01-30
    • Takeshi AimotoNobuhito MatsuyamaKazuo SugaiHiroki YanoYoshihiko SakataShinichi AkahaneYuichi Ishikawa
    • Takeshi AimotoNobuhito MatsuyamaKazuo SugaiHiroki YanoYoshihiko SakataShinichi AkahaneYuichi Ishikawa
    • H04L1/00
    • H04L47/32H04L47/10H04L47/11H04L47/20H04L47/2408H04L47/283H04L47/36
    • In one embodiment, a bandwidth monitoring device comprises a packet receiving circuit configured to receive packets; a counter configured to count a total packet length by adding up inputted packet lengths including a packet length of a next input packet and subtracting outputted packet lengths to produce a counted value; a timer configured to time a packet receiving time; a memory configured to store a number of packet receiving times and a number of counted values counted by the counter which correspond to the packet receiving times, respectively; a counter rate-of-change calculating portion configured to calculate a change rate by a first counted value corresponding to an oldest packet receiving time stored in the memory representing an oldest time at which a packet was received and a second counted value corresponding to a latest packet receiving time stored in the memory representing a latest time at which a packet was received; and a determining portion configured to decide whether the next input packet will be discarded based on a probability computed by the change rate and the counted value counted by the counter when the packet receiving circuit receives the next input packet.
    • 在一个实施例中,带宽监视设备包括被配置为接收分组的分组接收电路; 配置为通过将包括下一个输入分组的分组长度的输入分组长度相加并减去输出的分组长度以产生计数值来计数总分组长度; 定时器,配置为对分组接收时间进行计时; 存储器,被配置为分别存储与所述分组接收时间对应的由所述计数器计数的多个分组接收时间和多个计数值; 计数变化率计算部分,被配置为计算与存储在表示接收到分组的最旧时间的存储器中的最旧的分组接收时间相对应的第一计数值的变化率,以及对应于最新的 分组接收时间存储在存储器中,表示接收到分组的最新时间; 以及确定部分,被配置为基于当分组接收电路接收到下一个输入分组时由所述改变率计算的概率和由所述计数器计数的计数值来决定下一个输入分组是否将被丢弃。